Acta Metallurgica Sinica (English Letters) ›› 2024, Vol. 37 ›› Issue (4): 749-762.DOI: 10.1007/s40195-023-01651-3

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High-Speed Rubbing Behavior of Abrasive Coating Coated on Titanium Alloy Blade Tips

Wenshuang Gu1,2, Shuai Yang1,2, Shiyi Zhang1,2, Zhiliang Pei1(), Weihai Xue1, Deli Duan1, Jun Gong1(), Chao Sun1   

  1. 1Shi-Changxu Innovation Center for Advanced Materials, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China
    2School of Materials Science and Engineering, University of Science and Technology of China, Shenyang, 110016, China
  • Received:2023-08-21 Revised:2023-10-11 Accepted:2023-11-10 Online:2024-04-10 Published:2024-01-19
  • Contact: Zhiliang Pei, zlpei@imr.ac.cn; Jun Gong, jgong@imr.ac.cn

Abstract:

In aero-engines, abrasive coatings are typically utilized to protect the blade tip from excessive wear caused by the harder abradable sealing coating and thereby improve the sealing performance of engines. Therefore, a Ni/cBN abrasive coating was prepared on titanium alloy using electrodeposition. The high-speed rubbing tests with a linear velocity of 350 m/s and different incursion rates were performed to investigate the effect of the Ni/cBN abrasive coating on the wear behavior against NiCrAl/diatomite seal coating. Results showed that melting wear and adhesive transfer occurred on the bare blades, causing the bare blade to suffer excessive wear. While the Ni/cBN abrasive coating exhibited superior wear resistance and cutting performance. The cBN grits pullout, the abrasion of Ni matrix and transfer of seal coating to the cBN grits were the main wear mechanism of the Ni/cBN abrasive coating. Additionally, it was found that the relationship between the incursion rate and high-speed rubbing behavior is quite different for the bare blade and Ni/cBN coating. The reason for the difference in wear behavior of bare blade and Ni/cBN coating at different incursion rates was discussed in detail.

Key words: Gas turbine sealing, Abrasive coating, High-speed rubbing, Material transfer, Abradable coating